Li Zan, Qi XiaoLe, Ren XianGang, Cui Lei, Wang XiaoMei, Zhu Ping
National Laboratory of Biomacromolecules, Institute of Biophysics, Chinese Academy of Sciences, Beijing, 100101, China.
Sci China Life Sci. 2015 Aug;58(8):731-8. doi: 10.1007/s11427-015-4900-x. Epub 2015 Aug 6.
Infectious bursal disease virus (IBDV) poses a significant threat to the poultry industry. Viral protein 2 (VP2), the major structural protein of IBDV, has been subjected to frequent mutations that have imparted tremendous genetic diversity to the virus. To determine how amino acid mutations may affect the virulence of IBDV, we built a structural model of VP2 of a very virulent strain of IBDV identified in China, vvIBDV Gx, and performed a molecular dynamics simulation of the interaction between virulence sites. The study showed that the amino acid substitutions that distinguish vvIBDV from attenuated IBDV (H253Q and T284A) favor a hydrophobic and flexible conformation of β-barrel loops in VP2, which could promote interactions between the virus and potential IBDV-specific receptors. Population sequence analysis revealed that the IBDV strains prevalent in East Asia show a significant signal of positive selection at virulence sites 253 and 284. In addition, a signal of co-evolution between sites 253 and 284 was identified. These results suggest that changes in the virulence of IBDV may result from both the interaction and the co-evolution of multiple amino acid substitutions at virulence sites.
传染性法氏囊病病毒(IBDV)对家禽业构成重大威胁。IBDV的主要结构蛋白病毒蛋白2(VP2)频繁发生突变,使该病毒具有极大的遗传多样性。为了确定氨基酸突变如何影响IBDV的毒力,我们构建了在中国鉴定出的一种超强毒株vvIBDV Gx的VP2结构模型,并对毒力位点之间的相互作用进行了分子动力学模拟。研究表明,区分vvIBDV与弱毒IBDV的氨基酸替换(H253Q和T284A)有利于VP2中β桶环的疏水且灵活的构象,这可能促进病毒与潜在的IBDV特异性受体之间的相互作用。群体序列分析显示,在东亚流行IBDV毒株在毒力位点253和284处显示出明显的正选择信号。此外,还确定了位点253和284之间的共同进化信号。这些结果表明,IBDV毒力的变化可能是由毒力位点多个氨基酸替换的相互作用和共同进化导致的。